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Single-cell mass cytometry reveals intracellular survival/proliferative signaling in FLT3-ITD-mutated AML stem/progenitor cells

机译:单细胞大规模流式细胞仪揭示FLT3-ITD突变的AML干细胞/祖细胞中的细胞内存活/增殖信号

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摘要

Understanding the unique phenotypes and complex signaling pathways of leukemia stem cells (LSCs) will provide insights and druggable targets that can be used to eradicate acute myeloid leukemia (AML). Current work on AML LSCs is limited by the number of parameters that conventional flow cytometry (FCM) can analyze because of cell autofluorescence and fluorescent dye spectral overlap. Single-cell mass cytometry (CyTOF) substitutes rare earth elements for fluorophores to label antibodies, which allows measurements of up to 120 parameters in single cells without correction for spectral overlap. The aim of this study was the evaluation of intracellular signaling in antigen-defined stem/progenitor cell subsets in primary AML. CyTOF and conventional FCM yielded comparable results on LSC phenotypes defined by CD45, CD34, CD38, CD123, and CD99. Intracellular phosphoprotein responses to ex vivo cell signaling inhibitors and cytokine stimulation were assessed in myeloid leukemia cell lines and one primary AML sample. CyTOF and conventional FCM results were confirmed by western blotting. In the primary AML sample, we investigated the cell responses to ex vivo stimulation with stem cell factor (SCF) and BEZ235-induced inhibition of PI3K and identified activation patterns in multiple PI3K downstream signaling pathways including p-4EBP1, p-AKT, and p-S6, particularly in CD34+ subsets. We evaluated multiple signaling pathways in antigen-defined subpopulations in primary AML cells with FLT3-ITD mutations. The data demontrated the heterogeneity of cell phenotype distribution and distinct patterns of signaling activation across AML samples and between AML and normal samples. The mTOR targets p-4EBP1 and p-S6 were exclusively found in FLT3-ITD stem/progenitor cells, but not in their normal counterparts, suggesting both as novel targets in FLT3 mutated AML. Our data suggest that CyTOF can identify functional signaling pathways in antigen-defined subpopulations in primary AML, which may provide a rationale for designing therapeutics targeting LSC-enriched cell populations.
机译:了解白血病干细胞(LSC)的独特表型和复杂的信号传导途径将提供可用于根除急性髓性白血病(AML)的见识和可药物治疗的靶点。由于细胞自发荧光和荧光染料光谱重叠,目前对AML LSC的研究受到常规流式细胞仪(FCM)可以分析的参数数量的限制。单细胞大规模细胞计数法(CyTOF)替代了荧光素的稀土元素来标记抗体,从而可以在单个细胞中测量多达120个参数,而无需校正光谱重叠。这项研究的目的是评估原发性AML中抗原定义的干/祖细胞亚群中的细胞内信号传导。 CyTOF和常规FCM在由CD45,CD34,CD38,CD123和CD99定义的LSC表型上产生了可比的结果。在髓样白血病细胞系和一个原发性AML样品中评估了对离体细胞信号抑制剂和细胞因子刺激的细胞内磷蛋白反应。 CyTOF和常规FCM结果通过Western blot证实。在主要的AML样本中,我们研究了细胞对干细胞因子(SCF)和BEZ235诱导的PI3K抑制的离体刺激反应,并在包括p-4EBP1,p-AKT和p在内的多个PI3K下游信号通路中鉴定了激活模式-S6,尤其是在CD34 + 子集中。我们评估了具有FLT3-ITD突变的原代AML细胞中抗原定义的亚群中的多种信号通路。数据破坏了细胞表型分布的异质性以及AML样本之间以及AML与正常样本之间信号激活的不同模式。 mTOR靶标p-4EBP1和p-S6仅在FLT3-ITD干细胞/祖细胞中发现,而在其正常对应物中则未发现,表明这两种靶标都是FLT3突变AML中的新靶标。我们的数据表明CyTOF可以识别原发性AML抗原定义的亚群中的功能性信号通路,这可能为设计针对富含LSC的细胞群的治疗方法提供了依据。

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